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Erschienen in: Journal of Materials Science 10/2019

14.02.2019 | Metals

Study of the Q′ (Q)-phase precipitation in Al–Mg–Si–Cu alloys by quantification of atomic-resolution transmission electron microscopy images and atom probe tomography

Erschienen in: Journal of Materials Science | Ausgabe 10/2019

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Abstract

The precipitation mechanism of the Q phase in Al–Mg–Si–Cu alloys has long been the subject of ambiguity and debate since its metastable phase (Q′) has the same crystal structure and similar lattice parameters as its equilibrium counterparts. In the present work, the evolution of the Q′ (Q) phase during aging is studied by combination of quantitative atomic-resolution scanning transmission electron microscopy and atom probe tomography. It was found that the transformation from the Q′ to the Q phase involves changes of the occupancy of Al atoms in atomic columns of the Q′ (Q) phase. The Al atoms incorporated in the Cu, Si and Mg columns are gradually released into the Al matrix, while mixing between Cu and Si atoms occurs in the Si columns. This transformation process is mainly attributed to the low lattice misfit of the equilibrium Q phase. Besides, the formation of various compositions of the Q phase is due to the different occupancy in the atomic columns of the Q phase. The occupancy changes in the columns of the Q phase are kinetically controlled and are strongly influenced by the alloy composition and aging temperature.

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Literatur
1.
Zurück zum Zitat Martin JW (1968) Precipitation hardening. Pergamon Press, Oxford Martin JW (1968) Precipitation hardening. Pergamon Press, Oxford
2.
Zurück zum Zitat da Costa Teixeira J, Cram DG, Bourgeois L, Bastow TJ, Hill AJ, Hutchinson CR (2008) On the strengthening response of aluminum alloys containing shear-resistant plate-shaped precipitates. Acta Mater 56:6109–6122CrossRef da Costa Teixeira J, Cram DG, Bourgeois L, Bastow TJ, Hill AJ, Hutchinson CR (2008) On the strengthening response of aluminum alloys containing shear-resistant plate-shaped precipitates. Acta Mater 56:6109–6122CrossRef
3.
Zurück zum Zitat Edwards GA, Stille K, Dunlop GL, Couper MJ (1998) The precipitation sequence in Al–Mg–Si alloys. Acta Mater 46:3893–3904CrossRef Edwards GA, Stille K, Dunlop GL, Couper MJ (1998) The precipitation sequence in Al–Mg–Si alloys. Acta Mater 46:3893–3904CrossRef
4.
Zurück zum Zitat Bourgeois L, Dwyer C, Weyland M, Nie JF, Muddle BC (2011) Structure and energetics of the coherent interface between the θ′ precipitate phase and aluminium in Al–Cu. Acta Mater 59:7043–7050CrossRef Bourgeois L, Dwyer C, Weyland M, Nie JF, Muddle BC (2011) Structure and energetics of the coherent interface between the θ′ precipitate phase and aluminium in Al–Cu. Acta Mater 59:7043–7050CrossRef
5.
Zurück zum Zitat Styles MJ, Marceau RKW, Bastow TJ, Brand HEA, Gibson MA, Hutchinson CR (2015) The competition between metastable and equilibrium S (Al2CuMg) phase during the decomposition of AlCuMg alloys. Acta Mater 98:64–80CrossRef Styles MJ, Marceau RKW, Bastow TJ, Brand HEA, Gibson MA, Hutchinson CR (2015) The competition between metastable and equilibrium S (Al2CuMg) phase during the decomposition of AlCuMg alloys. Acta Mater 98:64–80CrossRef
6.
Zurück zum Zitat Chakrabarti DJ, Laughlin DE (2004) Phase relations and precipitation in Al–Mg–Si alloys with Cu additions. Prog Mater Sci 49:389–410CrossRef Chakrabarti DJ, Laughlin DE (2004) Phase relations and precipitation in Al–Mg–Si alloys with Cu additions. Prog Mater Sci 49:389–410CrossRef
7.
Zurück zum Zitat Styles MJ, Hutchinson CR, Chen Y, Deschamps A, Bastow TJ (2012) The coexistence of two S (Al2CuMg) phases in Al–Cu–Mg alloys. Acta Mater 60:6940–6951CrossRef Styles MJ, Hutchinson CR, Chen Y, Deschamps A, Bastow TJ (2012) The coexistence of two S (Al2CuMg) phases in Al–Cu–Mg alloys. Acta Mater 60:6940–6951CrossRef
8.
Zurück zum Zitat Ding L, Jia Z, Nie J-F, Weng Y, Cao L, Chen H, Wu X, Liu Q (2018) The structural and compositional evolution of precipitates in Al–Mg–Si–Cu alloy. Acta Mater 145:437–450CrossRef Ding L, Jia Z, Nie J-F, Weng Y, Cao L, Chen H, Wu X, Liu Q (2018) The structural and compositional evolution of precipitates in Al–Mg–Si–Cu alloy. Acta Mater 145:437–450CrossRef
9.
Zurück zum Zitat Matsuda K, Ikeno S, Uetani Y, Sato T (2001) Metastable phases in an Al–Mg–Si alloy containing copper. Metall Mater Trans A 32:1293–1299CrossRef Matsuda K, Ikeno S, Uetani Y, Sato T (2001) Metastable phases in an Al–Mg–Si alloy containing copper. Metall Mater Trans A 32:1293–1299CrossRef
10.
Zurück zum Zitat Arnberg L, Aurivillius B (1980) The crystal structure of AlxCu2Mg12−xSi7,(h-AlCuMgSi). Acta Chem Scand A 34:1–5CrossRef Arnberg L, Aurivillius B (1980) The crystal structure of AlxCu2Mg12−xSi7,(h-AlCuMgSi). Acta Chem Scand A 34:1–5CrossRef
11.
Zurück zum Zitat Cayron C, Sagalowicz L, Beffort O, Buffat PA (1999) Structural phase transition in Al–Cu–Mg–Si alloys by transmission electron microscopy study on an Al-4wt% Cu-1wt% Mg–Ag alloy reinforced by SiC particles. Philos Mag A 79:2833–2851CrossRef Cayron C, Sagalowicz L, Beffort O, Buffat PA (1999) Structural phase transition in Al–Cu–Mg–Si alloys by transmission electron microscopy study on an Al-4wt% Cu-1wt% Mg–Ag alloy reinforced by SiC particles. Philos Mag A 79:2833–2851CrossRef
12.
Zurück zum Zitat Wolverton C (2001) Crystal structure and stability of complex precipitate phases in Al–Cu–Mg–(Si) and Al–Zn–Mg alloys. Acta Mater 49:3129–3142CrossRef Wolverton C (2001) Crystal structure and stability of complex precipitate phases in Al–Cu–Mg–(Si) and Al–Zn–Mg alloys. Acta Mater 49:3129–3142CrossRef
13.
Zurück zum Zitat Biswas A, Siegel DJ, Seidman DN (2014) Compositional evolution of Q-phase precipitates in an aluminum alloy. Acta Mater 75:322–336CrossRef Biswas A, Siegel DJ, Seidman DN (2014) Compositional evolution of Q-phase precipitates in an aluminum alloy. Acta Mater 75:322–336CrossRef
14.
Zurück zum Zitat Bobel A, Kim K, Wolverton C, Walker M, Olson GB (2017) Equilibrium composition variation of Q-phase precipitates in aluminum alloys. Acta Mater 138:150–160CrossRef Bobel A, Kim K, Wolverton C, Walker M, Olson GB (2017) Equilibrium composition variation of Q-phase precipitates in aluminum alloys. Acta Mater 138:150–160CrossRef
15.
Zurück zum Zitat Torsæter M, Ehlers FJH, Marioara CD, Andersen SJ, Holmestad R (2012) Applying precipitate–host lattice coherency for compositional determination of precipitates in Al–Mg–Si–Cu alloys. Philos Mag 92:3833–3856CrossRef Torsæter M, Ehlers FJH, Marioara CD, Andersen SJ, Holmestad R (2012) Applying precipitate–host lattice coherency for compositional determination of precipitates in Al–Mg–Si–Cu alloys. Philos Mag 92:3833–3856CrossRef
16.
Zurück zum Zitat Stadelmann P (2006) Java electron microscopy simulation (JEMS) software. École Polytechnique Fédérale de Lausanne, Switzerland Stadelmann P (2006) Java electron microscopy simulation (JEMS) software. École Polytechnique Fédérale de Lausanne, Switzerland
17.
Zurück zum Zitat Ravi C (2004) First-principles study of crystal structure and stability of Al–Mg–Si–(Cu) precipitates. Acta Mater 52:4213–4227CrossRef Ravi C (2004) First-principles study of crystal structure and stability of Al–Mg–Si–(Cu) precipitates. Acta Mater 52:4213–4227CrossRef
18.
Zurück zum Zitat De Backer A, van den Bos KHW, Van den Broek W, Sijbers J, Van Aert S (2016) StatSTEM: an efficient approach for accurate and precise model-based quantification of atomic resolution electron microscopy images. Ultramicroscopy 171:104–116CrossRef De Backer A, van den Bos KHW, Van den Broek W, Sijbers J, Van Aert S (2016) StatSTEM: an efficient approach for accurate and precise model-based quantification of atomic resolution electron microscopy images. Ultramicroscopy 171:104–116CrossRef
19.
Zurück zum Zitat Marioara CD, Andersen SJ, Stene TN, Hasting H, Walmsley J, Van Helvoort ATJ, Holmestad R (2007) The effect of Cu on precipitation in Al–Mg–Si alloys. Philos Mag 87:3385–3413CrossRef Marioara CD, Andersen SJ, Stene TN, Hasting H, Walmsley J, Van Helvoort ATJ, Holmestad R (2007) The effect of Cu on precipitation in Al–Mg–Si alloys. Philos Mag 87:3385–3413CrossRef
20.
Zurück zum Zitat Wenner S, Jones L, Marioara CD, Holmestad R (2017) Atomic-resolution chemical mapping of ordered precipitates in Al alloys using energy-dispersive X-ray spectroscopy. Micron 96:103–111CrossRef Wenner S, Jones L, Marioara CD, Holmestad R (2017) Atomic-resolution chemical mapping of ordered precipitates in Al alloys using energy-dispersive X-ray spectroscopy. Micron 96:103–111CrossRef
21.
Zurück zum Zitat Hu S, Baskes M, Stan M, Chen L (2006) Atomistic calculations of interfacial energies, nucleus shape and size of θ′ precipitates in Al–Cu alloys. Acta Mater 54:4699–4707CrossRef Hu S, Baskes M, Stan M, Chen L (2006) Atomistic calculations of interfacial energies, nucleus shape and size of θ′ precipitates in Al–Cu alloys. Acta Mater 54:4699–4707CrossRef
22.
Zurück zum Zitat Ding L, Hu H, Jia Z, Weng Y, Wu X, Liu Q (2016) The disordered structure of Q′ and C phases in Al–Mg–Si–Cu alloy. Scr Mater 118:55–59CrossRef Ding L, Hu H, Jia Z, Weng Y, Wu X, Liu Q (2016) The disordered structure of Q′ and C phases in Al–Mg–Si–Cu alloy. Scr Mater 118:55–59CrossRef
Metadaten
Titel
Study of the Q′ (Q)-phase precipitation in Al–Mg–Si–Cu alloys by quantification of atomic-resolution transmission electron microscopy images and atom probe tomography
Publikationsdatum
14.02.2019
Erschienen in
Journal of Materials Science / Ausgabe 10/2019
Print ISSN: 0022-2461
Elektronische ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-019-03427-6

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